Near-field strong coupling of single quantum dots
Author(s) -
Heiko Groß,
Joachim M. Hamm,
Tommaso Tufarelli,
Ortwin Hess,
Bert Hecht
Publication year - 2018
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aar4906
Subject(s) - mesoscopic physics , quantum dot , physics , cavity quantum electrodynamics , coupling (piping) , plasmon , quantum , field (mathematics) , condensed matter physics , quantum mechanics , open quantum system , materials science , mathematics , pure mathematics , metallurgy
Strong coupling and the resultant mixing of light and matter states is an important asset for future quantum technologies. We demonstrate deterministic room temperature strong coupling of a mesoscopic colloidal quantum dot to a plasmonic nanoresonator at the apex of a scanning probe. Enormous Rabi splittings of up to 110 meV are accomplished by nanometer-precise positioning of the quantum dot with respect to the nanoresonator probe. We find that, in addition to a small mode volume of the nanoresonator, collective coherent coupling of quantum dot band-edge states and near-field proximity interaction are vital ingredients for the realization of near-field strong coupling of mesoscopic quantum dots. The broadband nature of the interaction paves the road toward ultrafast coherent manipulation of the coupled quantum dot-plasmon system under ambient conditions.
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